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Using adaptively coupled models and high-performance computing for enabling the computability of dust storm forecasting

机译:使用自适应耦合模型和高性能计算来实现沙尘暴预报的可计算性

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Forecasting dust storms for large geographical areas with high resolution poses great challenges for scientific and computational research. Limitations of computing power and the scalability of parallel systems preclude an immediate solution to such challenges. This article reports our research on using adaptively coupled models to resolve the computational challenges and enable the computability of dust storm forecasting by dividing the large geographical domain into multiple subdomains based on spa-tiotemporal distributions of the dust storm. A dust storm model (Eta-8bin) performs a quick forecasting with low resolution (22 km) to identify potential hotspots with high dust concentration. A finer model, non-hydrostatic mesoscale model (NMM-dust) performs high-resolution (3 km) forecasting over the much smaller hotspots in parallel to reduce computational requirements and computing time. We also adopted spatiotempo-ral principles among computing resources and subdomains to optimize parallel systems and improve the performance of high-resolution NMM-dust model. This research enabled the computability of high-resolution, large-area dust storm forecasting using the adaptively coupled execution of the two models Eta-8bin and NMM-dust.
机译:以高分辨率预测大地理区域的沙尘暴给科学研究和计算研究带来了巨大挑战。计算能力的限制和并行系统的可伸缩性使得无法立即解决此类挑战。本文报告了我们关于使用自适应耦合模型解决计算难题并通过基于沙尘暴的时空分布将较大的地理区域划分为多个子域来实现沙尘暴预报的可计算性的研究。沙尘暴模型(Eta-8bin)以低分辨率(22 km)进行快速预测,以识别高尘埃浓度的潜在热点。更好的模型,非静水中尺度模型(NMM-dust)可在更小的热点上并行执行高分辨率(3 km)预测,以减少计算需求和计算时间。我们还在计算资源和子域之间采用时空原理,以优化并行系统并提高高分辨率NMM-dust模型的性能。这项研究使用两种模型Eta-8bin和NMM-dust的自适应耦合执行,实现了高分辨率,大面积沙尘暴预报的可计算性。

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